Measuring Rotation in a Bose-Einstein Condensate with Phonon Interferometry
POSTER
Abstract
[1] A. Kumar et al., Phys. Rev. A. 97, 043615 (2018)
[2] G. E. Marti, R. Olf & D. M. Stamper Kurn, Phys Rev. A. 91, 013602 (2015).
[3] A. Kumar, N. Anderson, W. D. Phillips, S. Eckel, G. Campbell & S. Stringari, New J. Phys. 18 025001
(2016)
*Funding for this work was provided by a Next Generation Technologies Fund – Quantum Technologies grant (QT95) by the Commonwealth Defence Science and Technology Group, Australian Recearch Council Centre of Excellence for Engineered Quantum Systems (EQUS, CE170100009), and ARC Discovery Projects grant DP160102085. This research was also partially supported by the Australian Research Council Centre of Excellence in Future Low-Energy Electronics Technologies (project number CE170100039). T.W.N. and S.A.H. acknowledge the support of Australian Research Council Future Fellowships FT190100306 and FT210100809, respectively.
Publication: Charles W. Woffinden, Andrew J. Groszek, Guillaume Gauthier, Bradley J. Mommers, Michael. W. J. Bromley, Simon A. Haine, Halina Rubinsztein-Dunlop, Matthew J. Davis, Tyler W. Neely, Mark Baker, 'Viability of rotation sensing using phonon interferometry in
Bose-Einstein condensates', arXiv preprint arXiv:2212.11617 (2022)
Presenters
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Guillaume Gauthier
- University of Queensland